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Supporting IrO2 and IrRuOx nanoparticles on TiO2 and Nb-doped TiO2 nanotubes as electrocatalysts for the oxygen evolution reaction 被引量:3
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作者 Radostina V.Genova-Koleva Francisco Alcaide +4 位作者 Garbine Alvarez Pere L.Cabot Hans-Jürgen Grande María V.Martínez-Huerta Oscar Miguel 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第7期227-239,共13页
IrO2 and IrRuOx(Ir:Ru 60:40 at%),supported by 50 wt%onto titania nanotubes(TNTs)and(3 at%Nb)Nb-doped titania nanotubes(Nb-TNTs),as electrocatalysts for the oxygen evolution reaction(OER),were synthesized and character... IrO2 and IrRuOx(Ir:Ru 60:40 at%),supported by 50 wt%onto titania nanotubes(TNTs)and(3 at%Nb)Nb-doped titania nanotubes(Nb-TNTs),as electrocatalysts for the oxygen evolution reaction(OER),were synthesized and characterized by means of structural,surface analytical and electrochemical techniques.Nb doping of titania significantly increased the surface area of the support from 145(TNTs)to 260 m2g-1(Nb-TNTs),which was significantly higher than those of the Nb-doped titania supports previously reported in the literature.The surface analytical techniques showed good dispersion of the catalysts onto the supports.The X-ray photoelectron spectroscopy analyses showed that Nb was mainly in the form of Nb(IV)species,the suitable form to behave as a donor introducing free electrons to the conduction band of titania.The redox transitions of the cyclic voltammograms,in agreement with the XPS results,were found to be reversible.Despite the supported materials presented bigger crystallite sizes than the unsupported ones,the total number of active sites of the former was also higher due to their better catalyst dispersion.Considering the outer and the total charges of the cyclic voltammograms in the range 0.1–1.4 V,stability and electrode potentials at given current densities,the preferred catalyst was Ir O2 supported on the Nb-TNTs.The electrode potentials corresponding to given current densities were between the smallest ones given in the literature despite the small oxide loading used in this work and its Nb doping,thus making the Nb-TNTs-supported IrO2 catalyst a promising candidate for the OER.The good dispersion of IrO2,high specific surface area of the Nb-doped supports,accessibility of the electroactive centers,increased stability due to Nb doping and electron donor properties of the Nb(IV)oxide species were considered the main reasons for its good performance. 展开更多
关键词 Nb-doped TIO2 NANOTUBES iro2 catalyst IrRuOx catalyst Oxygen evolution reaction PEMWE
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IrO2改性钛网对固体聚合物电解质电解器集电极层电化学性能的影响 被引量:1
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作者 宋宇琨 吕洪 +1 位作者 郝传璞 米灿根 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2015年第7期1378-1384,共7页
采用亚当斯熔融法(Adams fusion method)在钛网上包覆Ir O2催化剂,并将其用作固体聚合物电解质(SPE)电解器的阳极集电极,发现其可以显著降低电解过电位.通过X射线多晶衍射(XRD)和透射电子显微镜(TEM)分析发现,包裹在钛网上的Ir... 采用亚当斯熔融法(Adams fusion method)在钛网上包覆Ir O2催化剂,并将其用作固体聚合物电解质(SPE)电解器的阳极集电极,发现其可以显著降低电解过电位.通过X射线多晶衍射(XRD)和透射电子显微镜(TEM)分析发现,包裹在钛网上的Ir O2催化剂晶粒为2.0~3.0 nm,结晶度良好;交流阻抗谱(EIS)和循环伏安(CV)分析结果表明,改性的钛网集电极层可增加三相反应活性点,使三相反应通道由催化层延伸到集电极层,活性催化剂表面积增大,从而大幅度降低了活化阻抗,电解性能获得提升.通过对不同Ir O2催化剂负载量改性的钛网进行研究发现,随着钛网负载Ir O2量的增加,在相同电流密度下,极化曲线的过电位先减小后增加,当Ir O2负载量为1.38%(质量分数)时,电解池的过电位最低,在1 A/cm2电流密度下,过电位为2.028 V. 展开更多
关键词 固体聚合物电解质电解器 亚当斯熔融法 阳极集电极 iro2催化剂 改性钛网
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